A new constraint on the physicochemical condition of mars surface during the amazonian epoch based on chemical speciation for secondary minerals in martian nakhlites

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Abstract

Iddingsite in Martian nakhlites contains various secondary minerals that reflect water– rock interaction on Mars. However, the formation processes of secondary Fe minerals in iddingsite are unclear because they include carbonates precipitated under reductive and alkaline conditions and sulfates that are generally precipitated under oxidative and acidic conditions. Mineral types cannot coexist under equilibrium. Herein, we characterize the carbonate phase of meteorite Yamato 000593 as siderite and Mn-bearing siderite via field-emission electron probe microanalyzer (FE-EPMA). Then, we examined the distribution and speciation of trace Cr and S within the carbonates through synchrotron micro-focused X-ray fluorescence-X-ray absorption fine structure and scanning transmission X-ray microscopy (μ-XRF-XAFS/STXM) analysis to estimate the transition history of Eh-pH conditions during siderite formation to explain the coexistence of carbonate and sulfate phases in the nakhlitse vein. Specifically, the distribution and speciation of S in the mesostasis and carbonate phases and the heterogeneous distribution of Mn-FeCO3 incorporating Cr(III) in the carbonate constrain the Eh-pH condition. The conditions and transition of the fluid chemistry determined herein based on speciation of various elements provide a new constraint on the physicochemical condition of the water that altered the nakhlite body during the Amazonian epoch.

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Suga, H., Suzuki, K., Usui, T., Yamaguchi, A., Sekizawa, O., Nitta, K., … Takahashi, Y. (2021). A new constraint on the physicochemical condition of mars surface during the amazonian epoch based on chemical speciation for secondary minerals in martian nakhlites. Minerals, 11(5). https://doi.org/10.3390/min11050514

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